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COMPUTATION OF THE HEAT TRANSFER AND FLUID FLOW IN A CARBON MONOXIDE BOILER

机译:一氧化碳锅炉内传热和流体流动的计算

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A numerical investigation of the heat transfer and fluid flow in a Carbon Monoxide boiler is presented.The influences of some important parameters related to the geometry of a CO boiler are also discussed,including the refractory thickness and the insertion of an ellipsoidal cone.The purpose is to improve the performance of a CO boiler,especially to alleviate hot spots,which may lead to deterioration of the refractory.It is found that the skin friction coefficient arises earlier in the DeNOx section when the refractory is thinner.Refractory thickening leads to a lower temperature in the DeNOx section.After leaving the DeNOx section,the temperature reduces due to the cooling pipes and the skin friction coefficient arises abruptly near the cooling pipes.It is also found that insertion of an ellipsoidal cone can lower the temperature in the DeNOx section and there is a larger skin friction coefficient with a larger ellipsoidal cone angle.After leaving the DeNOx section,the skin friction coefficient and the temperature both decrease.Finally,based on the result of this research and from a practical point of view,refractory thickening is a preferable choice for reducing friction and temperature in a CO boiler.
机译:对一氧化碳锅炉的传热和流体流动进行了数值研究,并讨论了与CO锅炉几何形状有关的一些重要参数的影响,包括耐火材料的厚度和椭圆锥的插入。是为了提高一氧化碳锅炉的性能,尤其是减轻热点,这可能导致耐火材料的劣化。发现耐火材料越薄,DeNOx区域的表皮摩擦系数就越早出现。离开DeNOx部分后,由于冷却管温度降低,并且冷却管附近的皮肤摩擦系数突然增加。还发现插入椭圆锥会降低DeNOx的温度。皮肤摩擦系数越大,椭球锥角越大。离开DeNOx区域后,皮肤摩擦c最后,基于本研究的结果,从实践的角度出发,难熔增稠是降低CO锅炉摩擦和温度的优选选择。

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